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A low-volume microstructured optical fiber hydrogen peroxide sensor

机译:低体积微结构光纤过氧化氢传感器

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The ability to measure the concentration of hydrogen peroxide (H2O2) in solution is critical for quality assessment and control in many disparate applications, including wine, aviation fuels and IVF. The objective of this research is to develop a rapid test for the hydrogen peroxide content that can be performed on very low volume samples (i.e. sub-μL) that is relatively independent of other products within the sample. For H2O2 detection we use suspended core optical fibers to achieve a high evanescent field interaction with the fluid of interest, without the constraint of limited interaction length that is generally inherent with nanowire structures. By filling the holes of the fiber with an analyte/fluorophore solution we seek to create a quick and effective sensor that should enable detection of desired species within liquid media. By choosing a fluorophore that reacts with our target species to produce an increase in fluorescence, we can correlate observed fluorescence intensity with the concentration of the target molecule.
机译:测量过氧化氢浓度(H2O2)的能力对于质量评估和控制在许多不同的应用中,包括葡萄酒,航空燃料和IVF。该研究的目的是为可在非常独立于样品中的其他产物的非常低的体积样品(即亚μl)上进行过氧化氢含量的快速试验。对于H2O2检测,我们使用悬浮的芯光纤来实现与感兴趣的流体的高渐逝场相互作用,而没有限制的相互作用长度的约束,该限制通常是纳米线结构所固有的。通过使用分析物/荧光团溶液填充纤维的孔,我们寻求创造一种快速且有效的传感器,其应能够检测液体介质中所需的物种。通过选择与我们的靶物种反应的荧光团以产生荧光的增加,我们可以将观察到的荧光强度与靶分子的浓度相关。

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